All Issue

2025 Vol.24, Issue 2 Preview Page

Research Article

30 September 2025. pp. 39-74
Abstract
References
1

구본길. (2020). 재생에너지 확대에 따른 전력계통 유연성 평가 기술. 전기의세계, 69(6), 11-16.

2

권태형. (2014). 신재생에너지 시장 확대를 위한 정책수단의 비교: 가격정책과 수량정책의 정책결합. 한국정책과학학회보, 18(2), 1-23.

3

길준규. (2023). 주민수용성 확보를 위한 송전선로 건설 규제의 도입방향. 경제규제와 법, 16(2), 191-206.

4

김경환, 한석만, 김형중. (2024). 분산에너지 활성화 특별법 추진 동항. 전기의세계, 73(9), 15-21.

5

김승완. (2020). 기후변화 대응을 위한 에너지 전환과 전력부문의 인센티브 규제: 영국의 RIIO 체계를 중심으로. (기후변화법제연구 이슈페이퍼, 2020-08호). 한국법제연구원.

6

김자현. (2023). 에너지 전환의 열쇠: 한국의 재생에너지 확대를 위한 유연성 자원 활성화 정책 제언. 기후솔루션.

7

김준영, 김성배, 박상욱. (2016). 의무할당제의 국내 신재생에너지 발전량에 대한 정책효과 분석. 한국사회와 행정연구, 27(2), 131-160.

8

산업통상자원부, 한국에너지공단. (2024). 분산에너지특화지역 가이드라인 설명회 발표자료.

9

산업통상자원부. (2021). 분산에너지 활성화 추진전략.

10

산업통상자원부. (2024a). 분산에너지 설비 설치계획 제출 및 절차 등에 관한 규정. (산업통상자원부 고시 제2024-187호).

11

산업통상자원부. (2024b). 전력계통영향평가 제도 시범운영 절차변경 공고. (산업통상자원부 전력계통혁신과 공고 2024-869).

12

산업통상자원부. (2025a). 분산에너지특화지역의 지정・운영 등에 관한 지침. (산업통상자원부 고시 제2025-036호).

13

산업통상자원부. (2025b). 지역과 기업이 함께 만드는 분산에너지 시스템 지원. (산업통상자원부 보도자료 2025.2.5.).

14

이동건. (2024). 해양에너지의 「분산에너지 활성화 특별법」적용에 따른 쟁점 및 개선방안. 해사법연구, 36(3), 93-116.

10.14443/kimlaw.2024.36.3.4
15

이상준. (2021). 배전선로 열적 허용 용량 및 온도에 따른 태양광발전 특성을 고려한 분산형전원 연계용량 검토. 2021년도 제52회 대한전기학회 하계학술대회 논문집.

16

이서진, 유종민. (2022). 재생에너지 발전 확대에 따른 전력계통한계가격의 변화. 자원・환경경제연구, 31(2), 141-163.

17

이재혁, 조공장, 서은주, 김도균, 강선아, 길준규, 유종준, 김도은. (2023). 송전선로 계획의 주민수용성 확보방안. (기본연구보고서 2023-07). 한국환경연구원.

18

이종서, 심동녁. (2022). 잠재계층분석(LCA)을 활용한 가공송전선로 건설에 대한 인식과 태도의 유형 및 특성 연구, 환경정책, 30(1), 93-115.

10.15301/jepa.2022.30.1.93
19

일렉트릭파워. (2024). 한전, 배전망운영자(DSO) 출범... 운영자로서 의무와 역할 강화 다짐.

20

임병인, 김명규, 강만옥, 고재경. (2016). 지역 간 전력수급 불균형에 따른 상생방안 연구. (정책연구 2016-01). 경기연구원.

21

장우석, 이진하. (2018). 국내외 에너지 신산업 트렌드 및 활성화 과제. 현대경제연구원 VIP Report, 716, 1-16.

22

전자신문. (2025). 에너지도 ‘지산지소’... 전국 광역지자체, 분산에너지 특구 유치 경쟁 치열.

23

진태영, 오세신, 박지용. (2023). 탄소중립 이행을 위한 열에너지 이용 기반 구축 연구(1/3). (기본연구보고서 23-15). 에너지경제연구원.

10.33778/kcsa.2023.23.5.003
24

한국경제. (2024). 2026년부터 지역별 전기요금 차등화... 수도권 비싸진다.

25

허준혁. (2020). 글로벌 유틸리티 Value Chain별 수익성 및 사업전략 분석. 전기저널.

26

ACEEE. (2025). Distributed Energy Resources.

27

Ahl, A., Yarime, M., Goto, M., Chopra, S. S., Kumar, N. M., Tanaka, K., Sagawa, D. (2020). Exploring blockchain for the energy transition: Opportunities and challenges based on a case study in Japan. Renewable and Sustainable Energy Reviews, 117, 109488.

10.1016/j.rser.2019.109488
28

Aydin, Z., Yardimci, O. (2024). Regulatory sandboxes and pilot projects: Trials, regulations, and insights in energy transition. Engineering Science and Technology, an International Journal, 56, 101792.

10.1016/j.jestch.2024.101792
29

Baldwin, D., Kerby, J., Powell, D., Margolis, R., Zuboy, J., Siddiqui, S., Boenker, K., Schweitzer, E., McDermott, T. (2025). Distributed energy resource interconnection roadmap. Transforming Interconnection by 2035 Interconnection Innovation e-Xchange (i2x), U.S. Department of Energy.

30

Bowen, T., Koebrich, S., McCabe, K., Sigrin, B. (2022). The locational value of distributed energy resources: A parcel-level evaluation of solar and wind potential in New York state. Energy Policy, 166, 112744.

10.1016/j.enpol.2021.112744
31

Burger, S. P., Luke, M. (2017). Business models for distributed energy resources: A review and empirical analysis. Energy Policy, 109, 230-248.

10.1016/j.enpol.2017.07.007
32

CPUC. (2022). DISTRIBUTED ENERGY RESOURCES ACTION PLAN ALIGNING VISION AND ACTION. Final Draft for consideration at Aprill 201, 2022 CPUC Voting Meeting.

33

De Martini, P. (2019). Operational coordination architecture: New models and approaches. IEEE power and energy magazine, 17(5), 29-39.

10.1109/MPE.2019.2921740
34

Denholm, P., Brown, P., Cole, W., Mai, T., Sergi, B. (2022). Examining supply-side options to achieve 100% clean electricity by 2035. Golden, CO: National Renewable Energy Laboratory. NREL/TP6A40-81644.

10.2172/1885591
35

Elizondo, G., Poudineh, R. (2023). Harnessing the power of distributed energy resources in developing countries: What can be learned from th experiences of global leaders?. The Oxford Institute for Energy Studies, OIES Paper: EL49.

36

EP WA. (2024). Distributed energy resources roadmap: Thrid progress report. Department of Energy, Mines, Industry Regulation and Safety, Government of Western Australia.

37

ESIG. (2022a). DER integration into wholesale markets and operations. A Report of the Energy Systems Integration Group’s Distributed Energy Resources Task Force.

38

ESIG. (2022b). The transition to a high-DER electricity system: Creating a national initiative on DER integration for the United States. A Report of the Energy Systems Integration Group’s Distributed Energy Resources Task Force.

39

ESIG. (2022c). Lessons learned for the U.S. Context:An assessment of UK and australian open networks initiatives. A Report of the Energy Systems Integration Group’s Distributed Energy Resources Task Force.

40

Facchini, A. (2017). Distributed energy resources: Planning for the future. Nature Energy, 2, 17129.

10.1038/nenergy.2017.129
41

FERC. (2020). FERC Order No. 2222: Participation of Distributed Energy Resource Aggregations in Market Operated by RTOs and ISOs.

42

García-Muñoz, F., Ivanova, A., Montané, J. F., Serrano, M., Corchero, C. (2023). A DSO flexibility platform based on an optimal congestion management model for the European CoordiNet project. Electric Power Systems Research, 221, 109386.

10.1016/j.epsr.2023.109386
43

González, D. M. L., Rendon, J. G. (2022). Opportunities and challenges of mainstreaming distributed energy resources towards the transition to more efficient and resilient energy markets. Renewable and Sustainable Energy Reviews, 157, 112018.

10.1016/j.rser.2021.112018
44

Hatziargyriou, N. D., Asimakopoulou, G. E. (2020). DER integration through a monopoly DER aggregator. Energy Policy, 137, 111124.

10.1016/j.enpol.2019.111124
45

Hausman, N. (2020). State strategies for valuing distributed energy resources in cost-effective locations. Clean Energy States Alliance.

10.2172/2394654
46

Heider, A., Huber, J., Farhat, Y., Hertig, Y., Hug, G. (2024). How to choose a suitable network tariff? - Evaluating network tariffs under increasing integration of distributed energy resources. Energy Policy, 188, 114050.

10.1016/j.enpol.2024.114050
47

Hood, C. (1986). The tools of government. Chatham, NJ: Chatham House.

48

Howlett, M., Ramesh, M. (2003). Studying pblic policy. New York: Oxford University Press.

49

IEA. (2022). Unlocking the potential of distributed energy resources: Power system oppportunities and best practices. International Energy Agency.

50

Iliopoulos, N., Esteban, M., Kudo, S. (2020). Assessing the willingness of residential electricity consumers to adopt demand side management and distributed energy resources: A case study on the Japanese market. Energy Policy, 137, 111169.

10.1016/j.enpol.2019.111169
51

Jin, T. (2022). Impact of heat and electricity consumption on energy intensity: A panel data anlaysis. Energy, 239, 121903.

10.1016/j.energy.2021.121903
52

Johansson, P., Vendel, M., Nuur, C. (2020). Integrating distributed energy resources in electricity distribution systems: An explorative study of challenges facing DSOs in Sweden. Utilities Policy, 67, 101117.

10.1016/j.jup.2020.101117
53

McDonnell, M., Nelson, R., Frik, N. M. (2025). Distributed energy resource (DER) integration framework. Energy Markets & Policy Berkeley Lab.

54

Mehmood, F., Umar, M., Dominguez, C., Kazmi, H. (2022). The role of residential distributed energy resources in Pakistan’s energy transition. Energy Policy, 167, 113054.

10.1016/j.enpol.2022.113054
55

Nam, E., Jin, T. (2021). Mitigating carbon emissions by energy transition, energy efficiency, and electrification: Difference between regulation indicators and empirical data. Journal of Cleaner Production, 300, 126962.

10.1016/j.jclepro.2021.126962
56

NYSERDA. (2020). 2020 compliance year. https://www.nyserda.ny.gov/All-Programs/Programs/Clean-Energy-Standard/REC-and-ZEC-Purch asers/2020-Compliance-Year Office of Energy.

57

OFGEM. (2020). RIIO-2 Final Determinations - Core Document. United Kingdom.

58

Roselli, M. A., Gimenes, A. L. V., Udaeta, M. E. M., Guardia, E. C. (2022). Pricing for distributed energy resources. 2023 ICER Distinguished Scholar Awards.

59

Sermarini, A. C. P., Azevedo, J. H. P., Albuquerque, V. C., Calili, R. F., Goncalves, F., Jannuzzi, G. (2024). Distributed energy resources in low-income communities: A public policy proposal for Brazil. Energy Policy, 187, 114030.

10.1016/j.enpol.2024.114030
60

Shen, B., Kahrl, F., Satchwell, A. J. (2021). Facilitating power grid decarbonization with distributed energy resources: Lessons from the United States. Annual Review of Environment and Resources, 46, 349-375.

10.1146/annurev-environ-111320-071618
61

Shi, J., Ma, L., Li, C., Liu, N., Zhang, J. (2022). A comprehensive review of standards for distributed energy resource grid-integration and microgrid. Renewable and Sustainable Energy Reviews, 170, 112957.

10.1016/j.rser.2022.112957
62

Wang, Y., Zhen, J. (2025). Evaluating the economic and environmental impacts of distributed photovoltaic policy: Insights from county-level data in China. Energy Policy, 198, 114509.

10.1016/j.enpol.2025.114509
63

Zhang, L., Qin, Q., Wei, Y. M. (2019). China's distributed energy policies: Evolution, instruments and recommendation. Energy Policy, 125, 55-64.

10.1016/j.enpol.2018.10.028
Information
  • Publisher :Korea Energy Economic Institute·Korea Resource Economics Association
  • Publisher(Ko) :에너지경제연구원·한국자원경제학회
  • Journal Title :Korean Energy Economic Review
  • Journal Title(Ko) :에너지경제연구
  • Volume : 24
  • No :2
  • Pages :39-74
  • Received Date : 2025-04-18
  • Revised Date : 2025-06-09
  • Accepted Date : 2025-07-03